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Does Math-Fact Retrieval Explain Sex Differences in Mathematical Test Performance? A Commentary.

We focus on four issues in commenting on Royer et al.'s work testing their hypothesis that sex differences in test performance can be explained by differences in math-fact retrieval latency. The first issue is whether the studies conducted by Royer et al. directly test their hypothesis; we argue that they do not. The second issue involves questions about the strength of the gender differences in math-fact retrieval. The third is whether math-fact retrieval should be considered the major mechanism in explaining the differences in test performance. In considering this third issue we discuss other theories regarding the nature of math problem solving that are useful for understanding test performance differences between males and females. The fourth issue is what particular experiential differences boys and girls have in math classrooms could contribute to the sex differences in test performance. We also consider sex differences in math attitudes and motivation. Copyright 1999 Academic Press.

Journal Article↗

Do sex differences in the brain explain sex differences in the hormonal induction of reproductive behavior? What 25 years of research on the Japanese quail tells us.

Early workers interested in the mechanisms mediating sex differences in morphology and behavior assumed that differences in behavior that are commonly observed between males and females result from the sex specificity of androgens and estrogens. Androgens were thought to facilitate male-typical traits, and estrogens were thought to facilitate female-typical traits. By the mid-20th century, however, it was apparent that administering androgens to females or estrogens to males was not always effective in sex-reversing behavior and that in some cases a "female" hormone such as an estrogen could produce male-typical behavior and an androgen could induce female-typical behavior. These conceptual difficulties were resolved to a large extent by the seminal paper of C. H. Phoenix, R. W. Goy, A. A. Gerall, and W. C. Young in (1959, Endocrinology 65, 369-382) that illustrated that several aspects of sexual behavior are different between males and females because the sexes have been exposed during their perinatal life to a different endocrine milieu that has irreversibly modified their response to steroids in adulthood. Phoenix et al. (1959) therefore formalized a clear dichotomy between the organizational and activational effects of sex steroid hormones. Since this paper, a substantial amount of research has been carried out in an attempt to identify the aspects of brain morphology or neurochemistry that differentiate under the embryonic/neonatal effects of steroids and are responsible for the different behavioral response of males and females to the activation by steroids in adulthood. During the past 25 years, research in behavioral neuroendocrinology has identified many sex differences in brain morphology or neurochemistry; however many of these sex differences disappear when male and female subjects are placed in similar endocrine conditions (e.g., are gonadectomized and treated with the same amount of steroids) so that these differences appear to be of an activational nature and cannot therefore explain sex differences in behavior that are still present in gonadectomized steroid-treated adults. This research has also revealed many aspects of brain morphology and chemistry that are markedly affected by steroids in adulthood and are thought to mediate the activation of behavior at the central level. It has been explicitly, or in some cases, implicitly assumed that the sexual differentiation of brain and behavior driven by early exposure to steroids concerns primarily those neuroanatomical/neurochemical characteristics that are altered by steroids in adulthood and presumably mediate the activation of behavior. Extensive efforts to identify these sexually differentiated brain characteristics over the past 20 years has only met with limited success, however. As regards reproductive behavior, in all model species that have been studied it is still impossible to identify satisfactorily brain characteristics that differentiate under early steroid action and explain the sex differences in behavioral activating effects of steroids. This problem is illustrated by research conducted on Japanese quail (Coturnix japonica), an avian model system that displays prominent sex differences in the sexual behavioral response to testosterone, and in which the endocrine mechanisms that control sexual differentiation of behavior have been clearly identified so that subjects with a fully sex-reversed behavioral phenotype can be easily produced. In this species, studies of sex differences in the neural substrate mediating the action of steroids in the brain, including the activity of the enzymes that metabolize steroids such as aromatase and the distribution of steroid hormone receptors as well as related neurotransmitter systems, did not result in a satisfactory explanation of sex differences in the behavioral effectiveness of testosterone. Possible explanations for the relative failure to identify the organized brain characteristics responsible for behavio

Animals↗

Clonality and life cycles of intestinal crypts explained by a state dependent stochastic model of epithelial stem cell organization.

The organization and control of stem cells is a key issue in epithelial cell biology. The small intestinal murine crypt is a useful tissue to study such problems since stem cells are known to be located at specific positions at the bottom of the crypt where they are self maintaining. Recent data suggest, that (1) the number of active stem cells in a crypt can fluctuate, (2) the immediate progeny of a single stem cell can replace other stem cells eventually leading to monoclonality and (3) the life cycle of crypts may be linked to stem cell dynamics. It is the objective of this paper to suggest a stochastic state-dependent model of stem cell and crypt growth which can explain and-link these phenomena into one comprehensive framework. Monte Carlo simulations are performed to show consistently with available data. The model explains the size distribution of small intestinal crypts in steady state, the observations of stem cell fluctuations and monoclonality conversion, recovery of the crypt population after moderate damage and the rate of crypt fission and extinction. The key assumption of this model is an autoregulatory control of stem cell growth.

Animals↗

Intramitotic and intraclonal variation in proliferative potential of human diploid cells: explained by telomere shortening.

Normal human diploid cells can only divide for a limited number of times (known as the Hayflick limit). They manifest two unique features during in vitro senescence. The division capability of individual cells in a clone, though all derived from a same ancestor, is heterogeneous with a distinct bimodal distribution. Two sister cells derived from a same parent cell can have a large difference in their doubling potentials. These two unique features have not been properly explained by any known physiological process since their observation in 1980. Here I represent a telomere-shortening model based on recent experimental measurement of telomere deletion in human cells. Using computer simulation, I show that the model satisfactorily explains the intraclonal and intramitotic variation in division capability of human diploid cells. Moreover, the simulations predict that human cells may only monitor the shortening of a few, most likely two, telomeres to regulate their proliferative potential.

Clone Cells↗

Alterations in biodistribution of cocaine may explain differential toxicity in pregnant and postpartum rats.

Biodistribution of cocaine in female rats before and after delivery of litters was studied in order to provide an explanation for the observed differences in cocaine-induced toxicity in pregnant and postpartum rats. Cocaine (20 mg/kg, ip) given to female rats at 16 days of gestation or 20 days of gestation did not have any apparent neurotoxic effects in the mothers. Similarly, no apparent toxicity was observed in virgin animals injected with the same dosage of cocaine. However, administration of the same dosage of cocaine to rats after delivery caused clonic-tonic convulsions and death within 5 min of injection. In an effort to explain these differences, the biodistribution of cocaine was investigated by injecting levo-[benzoyl-3,4-3H(N)] cocaine (20 mg/20 microCi/kg, ip) to nonpregnant rats and rats at different gestation periods and after delivery. The mean serum/brain ratios (concentration of cocaine in serum divided by cocaine concentration in the brain) of cocaine 5 min after injection in rats at 16 days gestation, 20 days gestation, within a 12-hr period after delivery, and in control virgin animals were 2099, 1132, 427, and 632, respectively. These results indicate that the biodistribution of cocaine is altered at parturition. This may explain the increased central nervous system toxicity in rats treated with cocaine after delivery. Results from this investigation may be useful in evaluating complications during labor and delivery which have been associated with cocaine abuse by pregnant women.

Animals↗

Non-uniformity of sarcomere lengths can explain the 'catch-like' effect of arthropod muscle.

The 'catch-like' effect, a hysteresis phenomenon in arthropod skeletal muscle contraction thought to be related to the catch of molluscan smooth muscle, was investigated in the closer muscle of the crab Eriphia spinifrons. Several parameters were varied to determine their influence on the catch-like effect. These parameters were (1) the frequency of repetitive stimulation of the slow excitatory neuron, (2) additional stimulation of the inhibitory neuron, (3) the amount of stretch applied to the muscle and (4) the stiffness of the mechano-electrical transducer. The results show that the catch-like effect is not related to the catch of molluscan smooth muscle but rather to the 'residual force enhancement' or 'creep' phenomenon described for vertebrate muscle. A hypothesis for residual force enhancement implies that the increase in force is caused by non-uniformity of sarcomere lengths along the muscle fibre. Based on this hypothesis and the actual force-length relationship of the crab muscle studied, calculations were carried out to determine, if the observed catch-like effect can be explained by such a model. The calculations corroborate the experimental evidence. The catch-like effect of arthropod muscles can thus be explained by the same mechanism responsible for residual force enhancement and creep in vertebrate muscle. A physiological relevance of the catch-like effect in arthropod muscle is inferred.

Animals↗

Allelic somatic mutations may explain vascular twin nevi.

Vascular twin nevi, i.e., telangiectatic nevus and nevus anemicus occurring together and adjacent to each other, can be explained as twin spots resulting from a somatic recombination. It is so far unclear, however, whether the postulated underlying autosomal recessive mutations are allelic. This problem can be approached by studying another cutaneous phenotype, phacomatosis pigmentovascularis. Within this diagnosis, several authors have reported the simultaneous occurrence of three different birthmarks, viz., a pigmentary nevus, a telangiectatic nevus and a nevus anemicus. These cases can also be explained as a twin-spot phenomenon, provided two of these nevi are considered allelic traits. The two vascular nevi are most probably allelic, whereas the pigmentary nevus may be a nonallelic component of this syndrome. In conclusion, phacomatosis pigmentovascularis provides circumstantial evidence suggesting allelism of somatic mutations giving rise to two different vascular nevi.

Alleles↗

Kinetics of human cone photopigments explained with a Rushton-Henry model.

Densitrometric measurements of the regeneration of cone visual photopigments have shown effects that cannot be explained by the existing quantitative models. Regeneration from a fully bleached state seems to depend on how this state has been reached and the shape of the regeneration curve cannot be produced by a first order reaction. Rushton and Henry (1968) proposed a store of 11-cis-retinal to explain rapid regeneration after a short bleach. We elaborated this idea into a quantitative model. Regeneration after three different bleach histories and steady state behaviour of the pigments was measured using the Utrecht densitometer. The Rushton-Henry model gives a good fit to the data and is clearly superior to the classical Rushton model in describing densitometric measurements.

Animals↗

An estimation of a model explaining the mechanism causing neurotic disorders using a theory of fuzzy sets.

Constructing and estimating a model to explain the mechanism of neurotic disorders is important and significant. The model helps the rearrangement or representation of knowledge obtained from professional physicians. However, it is a very difficult problem, because the objects requiring analysis are mental activities of human beings, and they originally include a comparatively large variance between individuals. The object data were obtained from patients with neurotic disorders who were diagnosed by several doctors for 10 years in a subagricultural areas in Japan. We analyzed the data and calculated the weights attached for personal information depending upon the similarity between the information and the kinds of neurotic disorders using the theory of fuzzy sets. From the results of our analysis, we constructed and estimated a model explaining the mechanism causing neurotic disorders as several linear equations. From data processing points of view, the estimation we attempted is placed in a kind of effective data compression with respect to discrete statistical data.

Adult↗

All or none cell responses of Ca2+-dependent K channels elicited by calcium or lead in human red cells can be explained by heterogeneity of agonist distribution.

We have studied the all or none cell response of Ca2+-dependent K+ channels to added Ca in human red cells depleted of ATP by incubation with iodoacetate and inosine. A procedure was used which allows separation and differential analysis of responding and nonresponding cells. Responding (H for heavy) cells incubated in medium containing 5 mM K lose KCl and water and increase their density to the point of sinking on diethylphthalate (specific gravity = 1.12) on centrifugation. Nonresponding (L for light) cells do not lose KCl at all. There is no intermediate behavior. Increasing the Ca concentration in the medium increases the fraction of cells which become H. No differences in the sensitivity to Ca2+ of the individual K+ channels were detected in inside-out vesicles prepared either from H or from L cells. The Ca content of H cells was higher than that of L cells. Cells depleted of ATP by incubation with iodoacetate and inosine sustain pump-leak Ca fluxes of about 15 mumol/liter cells per hour. ATP seems to be resynthesized in these cells at the expense of cell 2,3-diphosphoglycerate stores at a rate of about 150 mumol/liter cells per hour. Inhibition of 2,3-diphosphoglycerate phosphatase by tetrathionate increased 6-8 times the measured rate of uptake of external 45Ca. This was accompanied by an increase in the fraction of H cells. All or none cell responses of Ca2+-dependent K channels have also been evidenced in intact human red cells on addition of Pb. They have the same characteristics as those in responding and nonresponding cells. The detailed study of the kinetics of Pb-induced shrinkage of red cells suspended in medium containing 5 mM K showed that changes of Pb concentration changed not only the fraction of H cells but also the rate of shrinkage of responding cells. H cells generated by Pb treatment contained significantly more lead than L cells. The above results suggest that the two all or none cell responses studied here can be explained by heterogeneity of agonist distribution among cells. Since pump-leak fluxes exist in both cases, differences of agonist distribution could be generated by heterogeneity of pumping among cells. This interpretation turns interest from K channels to Ca pumps to explain the heterogeneous behavior of red cells in response to a uniform stimulus.

Adenosine Triphosphate↗

A bivariate negative binomial model to explain traffic accident migration.

The phenomenon of "regression to the mean" is now widely known in the study of the effectiveness of remedial treatment of traffic accident blackspots. What happens is that the criterion used for selection of sites at which treatment is to be applied gives rise to bias in the estimate of the effectiveness: the conditional expectation of the after frequency is less than the true mean, even if the treatment is totally ineffective. It has been reported in some previous studies that accident "migration" has been observed. This is the phenomenon whereby the accident rate apparently rises at sites that are untreated but that are neighbours to treated sites. If this were a genuine effect, it would have serious implications for the assessment of remedial treatments. This paper aims to explain this migration effect in purely probabilistic terms, without recourse to the concept of physical migration. The model used is a new bivariate negative binomial distribution, incorporating spatial correlation between the true mean site accident rates. As with the regression to mean effect, the migration effect can then be explained in terms of the conditioning implicit in the selection process.

Accidents, Traffic↗

Distribution of adrenergic receptors does not explain regional differences in blood flow in the pregnant rabbit uterus.

The increase in uterine blood flow during pregnancy is maximal at the placental implantation site, but the mechanisms of this increase are poorly understood. Adrenergic receptor activation may influence blood flow both directly and indirectly. We therefore asked whether distribution of myometrial adrenergic receptors within the rabbit uterus could explain the increased blood flow to smooth muscle under the placenta. alpha-Adrenergic and beta-adrenergic receptor concentrations and affinities were measured in myometrium from under the placenta and compared to myometrium between placentas and distant from the placentas. There were no differences in receptor concentrations or affinities in different parts of the uterus. We therefore conclude that the distribution of adrenergic receptors in the pregnant rabbit uterus cannot explain the preferential blood flow to myometrium at the placental implantation site.

Animals↗

A tunnelling model to explain the reduction of ferricytochrome c by H and OH radicals.

The kinetics of the reaction of OH radicals with ferricytochrome c was studied in the time range 1 microsecond to 1 s by means of pulse radiolysis. The OH radicals reduce ferricytochrome c by 40% +/- 10%. The time course of the reduction is explained by a mechanism whereby a radical formed after hydrogen has been abstracted from the outer surface of the protein reduces the iron by electron tunnelling. We have calculated that the reducing electron in the radical is bound with an energy of at least 1.75 eV and that the frequency factor of the tunnelling process is v=10(11.5)s-1. This model accounts for the observed absorbance change in time range 5 . 10(-6)--10(-1)s. The time course of the reduction of ferricytochrome c by H radicals (Lichtin, N.N., Shafferman A. and Stein, G. (1974) Biochim. Biophys. Acta 357, 386--398) is explained by the same model.

Calorimetry↗

The receptor binding properties of the 20K variant of human growth hormone explain its discrepant insulin-like and growth promoting activities.

The 20K variant of native (22K) hGH is a full agonist for the growth promoting and lactogenic properties of the hormone in vivo but has been reported to have weak or absent insulin-like properties. To explore if these differences may be explained at the receptor level, we compared the ability of 22K and 20K hGH to inhibit the binding of 125I-22K hGH to receptors in isolated rat adipocytes, a target for the insulin-like effects of the hormone and in IM-9 cultured human lymphocytes, more specific for growth effects. Our data show that while 20K hGH is a potent agonist of native 22K hGH in the IM-9 lymphocyte assay, its potency in the rat adipocyte binding assay is only 3%, even when both cells are incubated together in identical conditions. Thus, the receptors for hGH appear to be different on various target cells, explaining why the 20K variant has different relative biological potencies at different sites of action.

Adipose Tissue↗

Stoichiometry of K+/H+ antiport helps to explain extracellular pH 11 in a model epithelium.

The stoichiometry of K+/H+ antiport was measured fluorometrically by the static head method in highly purified vesicles from goblet cell apical membranes of larval lepidopteran midgut. The measured stoichiometry of 1 K+/2 H+ explains how the antiport results in electrophoretic exchange of extracellular H+ for intracellular K+, driven by the voltage component of the proton-motive force of an H+ translocating V-ATPase that is located in the same membrane. In turn, the exchange of K+ for H+ helps to explain how the midgut contents are alkalinized to a pH of 11.

Animals↗

Abnormal intestinal motor patterns explain enteric colonization with gram-negative bacilli in late radiation enteropathy.

BACKGROUND & AIMS: Bacterial overgrowth and intestinal pseudo-obstruction may succeed abdominal radiotherapy, and absence of intestinal migrating motor complex (MMC) has been reported in bacterial overgrowth. The aims of this study were to address the relationship between intestinal patterns of motility and gastrointestinal microflora and to elucidate the pathogenesis of late radiation enteropathy. METHODS: Forty-one consecutive female patients with symptoms of late radiation enteropathy were examined by prolonged ambulatory manometry, culture of gastric and duodenal samples with quantification of gram-negative bacilli (GNB) by the glucose gas test, the [14C]D-xylose breath test, and determination of pH and short-chain fatty acids in gastric juice. RESULTS: The intensity of MMC explained 61% (P < 0.001) and 71% (P < 0.001) of the variability of GNB in the stomach and duodenum, respectively, corresponding to the severity of disease. Abnormal MMC index and presence of irregular bursts were the best predictors of GNB (86%; P < 0.001, multiple regression). Fasting gastric pH explained gastric bacterial counts (63%; P < 0.001) but did not predict GNB. CONCLUSIONS: Impaired motility emerges as a causal factor for gastrointestinal colonization with GNB, whereas hypochlorhydria facilitates unspecific gastric colonization. Abnormal motility and GNB in the proximal small intestine are essential factors in the pathogenesis of severe late radiation enteropathy.

Adult↗

DNA B to D transition can be explained in terms of hydration economy of the minor groove atoms.

Adjacent phosphate oxygen atoms in A and Z-DNA are located much closer together than in the B form and can be hydrated more economically due to the formation of water bridges between them, whereas in the B form phosphates are hydrated individually. This principle of hydration economy of phosphate groups discovered by Saenger and colleagues could not be applied to the B-D transition, which, like the B-A and B-Z transitions, occurs in a situation of water deficiency, because the distances between adjacent phosphates of individual polynucleotide chains in the D form are not much different from B-DNA. It follows from our calculations of B and D-DNA accessibility to solvent performed by the method of Lee & Richards, and from a simulation of solvent structure near DNA, that there is an economy of hydration only for the minor groove atoms. This feature and some experimental data can explain why only a limited range of sequences consisting of A.T or I.C pairs undergo the transition to the D form. The conformational transition in DNAs with such sequences to a poly[d(A]).poly[d(T])-like conformation (Bh-DNA), which is accompanied by a narrowing of the minor groove, can be explained in the same way. Calculations suggest that in the D-form minor groove of different A-T or I-C DNAs there is a double-layer hydration spine similar to that observed by Drew & Dickerson in the A-T tract of the d(C-G-C-G-A-A-T-T-C-G-C-G) dodecamer. The B-D and B-Bh transitions in A + T-rich DNAs can have biological implications, e.g. they can facilitate DNA bending upon the interaction with proteins.

DNA↗

The effects of althesin on luteinizing hormone release cannot be explained by actions of the GABAA receptor alone.

Althesin and pentobarbitone are anaesthetics which act by prolonging the open time of the chloride channels of the GABA(A) receptor. To explain why luteinizing hormone (LH) release is less depressed by Althesin anaesthesia than by pentobarbitone anaesthesia we suggest that either Althesin is a less potent anaesthetic in the preoptic area or that Althesin as well as stimulating GABA(A) receptors has some other action, perhaps stimulation of GABA(B) receptors, which may facilitate LH release. To investigate the relative potency of the anaesthetics in the preoptic area nine cats were anaesthetised, six with Althesin and three with pentobarbitone, mounted in a stereotaxic frame and prepared for extracellular recording and stimulation of spontaneously active units in the preoptic region. When cats anaesthetised with Althesin were compared with cats anaesthetised with pentobarbitone there were significantly fewer of these units for the number of tracks made. These units also had a significantly lower frequency and a distribution significantly skewed toward lower frequencies. Electrical stimulation of the fornix and of sites in the medial basal hypothalamus and medial forebrain bundle inhibited about 50% of the units and the median duration of the inhibitory pause was significantly longer following stimulation at all three sites in cats anaesthetised with Althesin. We conclude that Althesin is a more potent anaesthetic than pentobarbitone in the preoptic region and that its effects on LH release cannot be explained by its effects on the GABA(A) receptor alone.

Action Potentials↗